Примери за използване на Nanocomposites на Английски и техните преводи на Български
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The development of nanocomposites, i.e.
Nanocomposites with brush-like reinforcement.
Synthesis of Magnetic/Fluorescent Nanocomposites.
Polymer nanocomposites and hydrogels can produced successfully by ultrasound.
Particularly promising is the use of porous metals in nanocomposites.
Sonication is proven to produce high-quality nanocomposites with highly dispersed CNTs, graphene….
Semiconductor nanocrystal quantum dots,metal nanoparticles, nanocomposites.
In order to understand all the properties of such nanocomposites you have to comprehend how they self-assemble at the nanoscale.
Ultrasonic catalyst regeneration works for mineral andmetal particles,(meso-)porous particles and nanocomposites.
Cadmium(II)-thioacetamide nanocomposites were synthesized in the presence and absence of polyvinyl alcohol via sonochemical route.
Xiao-Liang, Xu(2011): Synthesis andcharacteristics of multifunctional Fe3O4-SiO2-CdS magnetic-fluorescent nanocomposites.
One way of addressing this problem is hybrid materials or nanocomposites- composite materials that contain nanoparticles.
Enhancements of nanocomposites range from mechanical, electrical/ conductive, thermal, optical, electrochemical to catalytic properties.
Very large surface areas thus arise in very limited space,which allow these nanocomposites to be used as catalysts.
It is made of hydrogel nanocomposites that contain magnetic nanoparticles allowing it to be controlled via an electromagnetic field.
Nanoparticles such as silver, copper, CNTs, graphene, graphite,other metal-coated particles and nanocomposites are incorporated for high conductivity.
Here, we extend this study to include the nanocomposites prepared with larger amines, such as C8H18NH(dibutylamine) and C10H22NH(dipentylamine).
Long-time tested on scientific level and implemented on many industrial production plant,the ultrasonic dispersion and formulation of nanocomposites is a well-established method.
They are composed of hydrogel nanocomposites that consist of magnetic nanoparticles enabling them to be controlled through an electromagnetic field.
Powerful ultrasonic dispersers allow to synthesize, deagglomerate and distribute metallic(e.g. Ag), carbon-based(e.g. CNTs, graphene)nanoparticles as well as nanocomposites with excellent electrical conductivity.
Furthermore, graphene is incorporated into many nanocomposites and composite materials as reinforcing additive, e.g. in polymers, ceramics and metal matrices.
Nanocomposites offer technological and economic advantages for almost all sectors of industry, including aerospace, automotive, electronic, biotechnological, pharmaceutical and medical sectors.
Methods for obtaining, testing andcontrolling of multifunctional polymer nanocomposites, with improved mechanical, electrical, thermal and electromagnetic properties for 3D printing and other applications.
Biological applications: An example for ultrasonic graphene preparation andits biological use is given in the study“Synthesis of Graphene-Gold Nanocomposites via Sonochemical Reduction” by Park et al.
Ultrasonically assists the synthesis of nanocomposites consisting of magnetic nanoparticles and fluorescent quantum dots(QDs) with a coating of silica shell.
Clay minerals have provided a boost in technology, because they are inexpensive nanomaterials, and as such,they have a huge potential for the synthesis of polymer nanocomposites with superior mechanical and thermal properties.
Bilateral Agreement BAS- ICTP, CSIC, Spain,Project title:"Foamed nanocomposites based on metallocene polyolefins: structural characterization and thermomechanical behavior"(2008-2009), coordinator.
Ultrasonic processors handle easily high viscosities, large volumes and abrasive materials. By the application of power ultrasound, particles can be uniformly reduced to nano size andintegrated into high performance nanocomposites.
Physico-chemical mechanics: development of new technologies for the preparation of polymeric micro- and nanocomposites created on the basis of polymeric matrices of different origins and methods for their study.
Research Topics: Optics, Photonics and Nanotechnology Micro and nanophotonic device and technologies Light detection and ranging- LIDAR Microwave photonics Laser system design Optical communication Metamaterials, plasmonics, photonic crystals Graphene and similar 2D crystal based nanophotonic devices Plasmonic biosensors and super absorbers for energy harvesting Semiconductor nanocrystal quantum dots,metal nanoparticles, nanocomposites Flexible and stretchable electronics Excitonic- plasmonic nanostructures for light harvesting Novel optoelectronic devices Control methods in quantum models Manipulation with…[-].